D-saccharic acid-1,4-lactone ameliorates alloxan-induced diabetes mellitus and oxidative stress in rats through inhibiting pancreatic beta-cells from apoptosis via mitochondrial dependent pathway

被引:32
作者
Bhattacharya, Semantee [1 ]
Manna, Prasenjit [2 ]
Gachhui, Ratan [1 ]
Sil, Parames C. [2 ]
机构
[1] Jadavpur Univ, Dept Life Sci & Biotechnol, Kolkata 700032, India
[2] Bose Inst, Div Mol Med, Kolkata 700054, India
关键词
Diabetes; Oxidative stress; Mitochondrial damage; Pancreatic beta-cell apoptosis; D-saccharic acid 1,4-lactone; Antioxidant; D-GLUCARIC ACID; MECHANISM; GLUTATHIONE; GLUCOSE;
D O I
10.1016/j.taap.2011.09.013
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
Oxidative stress plays a vital role in diabetic complications. To suppress the oxidative stress mediated damage in diabetic pathophysiology, a special focus has been given on naturally occurring antioxidants present in normal diet. D-saccharic acid 1,4-lactone (DSL), a derivative of D-glucaric acid, is present in many dietary plants and is known for its detoxifying and antioxidant properties. The aim of the present study was to evaluate the beneficial role of DSL against alloxan (ALX) induced diabetes in the pancreas tissue of Swiss albino rats. A dose-dependent study for DSL (20-120 mg/kg body weight) was carried out to find the effective dose of the compound in ALX-induced diabetic rats. ALX exposure elevated the blood glucose, glycosylated Hb, decreased the plasma insulin and disturbed the intra-cellular antioxidant machineries whereas oral administration of DSL at a dose of 80 mg/kg body weight restored these alterations close to normal. Investigating the mechanism of the protective activity of DSL we observed that it prevented the pancreatic beta-cell apoptosis via mitochondria-dependent pathway. Results showed decreased mitochondrial membrane potential, enhanced cytochrome c release in the cytosol and reciprocal regulation of Bcl-2 family proteins in the diabetic rats. These events were also found to be associated with increased level of Apaf-1, caspase 9, and caspase 3 that ultimately led to pancreatic beta-cell apoptosis. DSL treatment, however, counteracted these changes. In conclusion, DSL possesses the capability of ameliorating the oxidative stress in ALX-induced diabetes and thus could be a promising approach in lessening diabetic complications. (C) 2011 Elsevier Inc. All rights reserved.
引用
收藏
页码:272 / 283
页数:12
相关论文
共 39 条
  • [1] ROLE OF OXIDATIVE STRESS IN DEVELOPMENT OF COMPLICATIONS IN DIABETES
    BAYNES, JW
    [J]. DIABETES, 1991, 40 (04) : 405 - 412
  • [2] BUNN HF, 1979, J BIOL CHEM, V254, P3892
  • [3] The Apaf-1 apoptosome: a large caspase-activating complex
    Cain, K
    Bratton, SB
    Cohen, GM
    [J]. BIOCHIMIE, 2002, 84 (2-3) : 203 - 214
  • [4] β-cell apoptosis and defense mechanisms -: Lessons from type 1 diabetes
    Eizirik, DL
    Darville, MI
    [J]. DIABETES, 2001, 50 : S64 - S69
  • [5] ESTERBAUER H, 1990, METHOD ENZYMOL, V186, P407
  • [6] SUPEROXIDE RADICAL AND SUPEROXIDE DISMUTASE
    FRIDOVICH, I
    [J]. ACCOUNTS OF CHEMICAL RESEARCH, 1972, 5 (10) : 321 - +
  • [7] Effects of propolis on blood glucose, blood lipid and free radicals in rats with diabetes mellitus
    Fuliang, HU
    Hepburn, HR
    Xuan, HX
    Chen, ML
    Daya, S
    Radloff, SE
    [J]. PHARMACOLOGICAL RESEARCH, 2005, 51 (02) : 147 - 152
  • [8] BCL-2 family members and the mitochondria in apoptosis
    Gross, A
    McDonnell, JM
    Korsmeyer, SJ
    [J]. GENES & DEVELOPMENT, 1999, 13 (15) : 1899 - 1911
  • [9] Hanausek Margaret, 2003, Integr Cancer Ther, V2, P139, DOI 10.1177/1534735403002002005
  • [10] Hashemi M., 2009, WORLD J MED SCI, V4, P70